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Cascade energy optimization for waste heat recovery in distributed energy systems

机译:级联能源优化,用于分布式能源系统中的余热回收

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摘要

The efficiency of distributed energy systems can be significantly increased through waste heat recovery from industry or power generation. The technologies used for this process are typically dependent on the quality and temperature grades of waste heat. To maximize the efficiency of cascade heat utilization, it is important to optimize the choice of waste heat recovery technologies and their operation. In this paper, a detailed mixed integer linear programming optimization model is proposed for waste heat recovery in a district-scale microgrid. The model can distinguish waste heat quality for planning and operation optimization of distributed energy systems. Heat utilization technologies are formulated in this developed model and categorized in different temperature grades. The developed model is validated using four typical cases under different settings of system operation and business models. It is found that the optimization model, by distinguishing waste heat temperature, can increase energy cost savings by around 5%, compared to models that do not consider waste heat temperature grades. Additionally, the results indicate that the developed model can provide more realistic configuration and technologies dispatch.
机译:通过从工业或发电中回收余热,可以显着提高分布式能源系统的效率。用于此过程的技术通常取决于废热的质量和温度等级。为了使级联热利用的效率最大化,优化废热回收技术及其操作的选择非常重要。本文提出了一种详细的混合整数线性规划优化模型,用于区域规模微电网的余热回收。该模型可以区分余热质量,以用于分布式能源系统的计划和运行优化。在这个已开发的模型中制定了热利用技术,并将其分类为不同的温度等级。在系统操作和业务模型的不同设置下,使用四种典型案例对开发的模型进行了验证。发现与不考虑废热温度等级的模型相比,通过区分废热温度的优化模型可以将能源成本节省提高约5%。此外,结果表明,开发的模型可以提供更实际的配置和技术调度。

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